Effective Theory of Non-Adiabatic Quantum Evolution Based on the Quantum Geometric Tensor - Archive ouverte HAL
Article Dans Une Revue Physical Review Letters Année : 2018

Effective Theory of Non-Adiabatic Quantum Evolution Based on the Quantum Geometric Tensor

O. Bleu
  • Fonction : Auteur
G. Malpuech
Y. Gao
  • Fonction : Auteur
D.D. Solnyshkov
  • Fonction : Auteur

Résumé

We study the role of the quantum geometric tensor (QGT) in the evolution of quantum systems. We show that all its components play an important role on the extra phase acquired by a spinor and on the trajectory of an accelerated wavepacket in any realistic finite-duration experiment. While the adiabatic phase is determined by the Berry curvature (the imaginary part of the tensor), the non-adiabaticity is determined by the quantum metric (the real part of the tensor) and allows to determine corrections in the regimes where Landau-Zener approach is inapplicable. The particular case of a planar microcavity in the strong coupling regime allows to extract the QGT components by direct light polarization measurements and to check their effects on the quantum evolution.

Dates et versions

hal-01867354 , version 1 (04-09-2018)

Identifiants

Citer

O. Bleu, G. Malpuech, Y. Gao, D.D. Solnyshkov. Effective Theory of Non-Adiabatic Quantum Evolution Based on the Quantum Geometric Tensor. Physical Review Letters, 2018, 121, pp.020401. ⟨10.1103/PhysRevLett.121.020401⟩. ⟨hal-01867354⟩
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